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RB18A调节p53依赖的细胞凋亡。

RB18A regulates p53-dependent apoptosis.

作者信息

Frade Raymond, Balbo Michelle, Barel Monique

机构信息

Immunochimie des Régulations Cellulaires et des Interactions Virales, INSERM U.354, Centre INSERM, Hôpital Saint-Antoine, 75012, Paris, France.

出版信息

Oncogene. 2002 Jan 31;21(6):861-6. doi: 10.1038/sj.onc.1205177.

Abstract

We previously demonstrated that RB18A, a member of TRAP220/DRIP205/PBP family, in vivo acted as a cofactor of transcription by differently regulating p53wt transactivating activity on physiological promoters. Using p53-negative cells transfected with different constructs, we herein demonstrated that RB18A down-regulated p53wt-dependent apoptosis. This biological regulation was due to a specific diminution of p53wt protein level, as level of p53mut and GAPDH proteins was not modified. This p53wt diminution was dependent on proteasome activity, as inhibited by MG-132 inhibitor. This specific p53wt degradation was correlated with an increase in expression of MDM2, which promoted p53wt degradation into proteasome. RB18A up-regulated MDM2 expression by activating MDM2 promoter, even in absence of p53wt. Altogether, these data emphasized that RB18A could regulate p53wt function not only by direct interaction between both proteins, but also by up-regulating promoter activity of MDM2, a p53-regulating partner.

摘要

我们先前证明,TRAP220/DRIP205/PBP家族成员RB18A在体内通过不同程度地调节p53野生型在生理性启动子上的反式激活活性而充当转录辅因子。通过用不同构建体转染p53阴性细胞,我们在此证明RB18A下调了p53野生型依赖性细胞凋亡。这种生物学调节是由于p53野生型蛋白水平的特异性降低,因为p53突变型和GAPDH蛋白水平未发生改变。这种p53野生型的降低依赖于蛋白酶体活性,因为MG-132抑制剂可抑制该活性。这种特异性的p53野生型降解与MDM2表达增加相关,MDM2促进p53野生型降解进入蛋白酶体。即使在没有p53野生型的情况下,RB18A也通过激活MDM2启动子上调MDM2表达。总之,这些数据强调RB18A不仅可以通过两种蛋白之间的直接相互作用来调节p53野生型功能,还可以通过上调p53调节伴侣MDM2的启动子活性来实现。

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